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Volume 21 Issue 3
Aug.  2021
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Article Contents
Xing Xianran, Yuan Lianyu, Gao Mulongsan, Qiao Zhiyu. Energetic Asymmetry of LnCl3/MCl Molten Salts(Ln=rare earth metals, M=alkali metals)[J]. Chinese Journal of Engineering, 1999, 21(3): 241-244. doi: 10.13374/j.issn1001-053x.1999.03.007
Citation: Xing Xianran, Yuan Lianyu, Gao Mulongsan, Qiao Zhiyu. Energetic Asymmetry of LnCl3/MCl Molten Salts(Ln=rare earth metals, M=alkali metals)[J]. Chinese Journal of Engineering, 1999, 21(3): 241-244. doi: 10.13374/j.issn1001-053x.1999.03.007

Energetic Asymmetry of LnCl3/MCl Molten Salts(Ln=rare earth metals, M=alkali metals)

doi: 10.13374/j.issn1001-053x.1999.03.007
  • Received Date: 1998-10-23
    Available Online: 2021-08-27
  • Coulomb interaction, polarization effect and Van der Waals interaction play a significant role,and lead to the energetic asymmetry in the LnCl3,/MCl molten salts. The negative deviation from idea solution behavior sharply increases with the mixture from LiCl to CsCl, and the short-rang maximun ordering was observed at xLnCl≈ 0.2 from KCl to CsCl. Modified quasi-chemical model is a good approximation to describe the ordering properties. However, it is more reasonable to develop new thermodynamic model, considering the interaction between next closed-neighbor particles and interaction between unlike ion particles.

     

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